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Soil Freezing and the Acid-Base Chemistry of Soil Solutions in a Northern Hardwood Forest

机译:北方阔叶林的土壤冻结与土壤溶液的酸碱化学

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摘要

Reductions in the depth and duration of snow cover under a warmer climate may cause soil freezing events to become more frequent, severe, and spatially extensive in northern temperate forest ecosystems. In this experiment, snow cover was manipulated to simulate the late development of snowpack and to induce soil freezing at sugar maple (Acer saccharum) and yellow birch (Betula alleghaniensis) stands at the Hubbard Brook Experimental Forest (HBEF) in the White Mountains of New Hampshire. The objective of this manipulation was to elucidate the effects of soil freezing on the concentrations and fluxes of soil solution H+, Ca2+, Mg2+, K+, and Na+, as well as values of acid neutralizing capacity (ANC). Mild soil freezing events (soil temperatures never decreased below -5°C) resulted in pronounced acidification of soil solutions, driven primarily by nitrification, in the forest floor of sugar maple stands during the growing season. This mobilization of NO-3 from the forest floor of maple stands was accompanied by the leaching of Ca2+ and Mg2+ in Oa horizon solutions. Responses of soil solution acid-base chemistry to soil freezing were not evident in yellow birch stands or in the Bs horizon of either vegetation type, emphasizing the importance of vegetation type and the mineral soil in determining the effects of climatic disturbance on drainage water chemistry and nutrient loss. These results suggest that models of soil biogeochemistry in temperate forest ecosystems should consider soil-freezing events when simulating the acid-base chemistry of soil solutions and the translocation of nutrient base cations between soil horizons.
机译:温暖的气候下,积雪的深度和持续时间的减少可能导致土壤冻结事件变得更加频繁, 严重,并且在北部温带森林中 < / sup>生态系统。在该实验中,操纵积雪来模拟积雪的晚期发育并在糖枫(枫树枫叶)和黄桦(桦木 < / sup> alleghaniensis)位于新罕布什尔州怀特山的哈伯德布鲁克实验林 (HBEF)。该操作的目的 是为了阐明土壤冻结 对土壤溶液H + ,Ca 2的浓度和通量的影响。 + Mg 2 + ,K + 和Na + 以及其值酸中和容量 (ANC)。轻微的土壤冻结事件(土壤温度从不降低 低于-5°C)导致森林中的土壤 溶液显着酸化,主要是硝化作用,导致森林 糖枫的地板在生长季节站立。枫林中- 3 从枫木林地的 动员 伴随着Ca 的浸出在Oa层溶液中> 2 + 和Mg 2 + 土壤溶液酸碱化学对土壤冻结的响应 在任何一种植被类型的黄桦林或Bs层 中都很明显,强调了植被 类型和矿质土壤在确定气候 方面的重要性sup>对排水化学和养分流失的干扰。这些 结果表明,当 模拟土壤溶液的酸碱化学性质和温度时,森林温带森林生态系统中的土壤生物地球化学模型应考虑土壤冻结事件。营养素基础阳离子在土壤层之间的 易位。

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  • 来源
    《Soil Science Society of America Journal》 |2003年第6期|1897-1908|共12页
  • 作者单位

    Dep. of Plant Biology, Univ. of Illinois, 505 S. Goodwin Ave., Urbana, IL 61801,Cold Regions Research and Engineering Laboratory, U.S. Army, Hanover, NH 03755;

    Dep. of Civil and Environmental Engineering, Syracuse Univ., 220 Hinds Hall, Syracuse, NY 13244,Cold Regions Research and Engineering Laboratory, U.S. Army, Hanover, NH 03755;

    Institute of Ecosystem Studies, P.O. Box AB, Millbrook, NY 12545,Cold Regions Research and Engineering Laboratory, U.S. Army, Hanover, NH 03755;

    Institute of Ecosystem Studies, P.O. Box AB, Millbrook, NY 12545,Cold Regions Research and Engineering Laboratory, U.S. Army, Hanover, NH 03755;

    Dep. of Natural Resources, Cornell Univ., Ithaca, NY 14853,Cold Regions Research and Engineering Laboratory, U.S. Army, Hanover, NH 03755;

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